A display substrate and a display device are provided. In the display substrate, each of the plurality of anode groups includes a first anode and a second anode, the first anode includes a first main body portion, a first connection portion, an extension portion and an anode compensation portion, an orthographic projection of the anode compensation portion on the base substrate covers one thin film transistor, the anode compensation portion has a first point at a side away from the second center line, and the first main body portion has a second point at the first side, the first anode and a connection line between the first point and the second point enclose a notch region, and an area of the notch region is greater than at least one of an area of the anode compensation portion and an area of the first connection portion.
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1. A display substrate, comprising:
a base substrate;
a pixel circuit layer, on the base substrate;
an anode layer, at a side of the pixel circuit layer away from the base substrate,
wherein the pixel circuit layer comprises a plurality of pixel driving circuits, the anode layer comprises a plurality of anodes, and the plurality of pixel driving circuits are arranged in one-to-one correspondence with the plurality of anodes,
the plurality of anodes comprise a plurality of anode groups arranged in an array along a first direction and a second direction, each of the plurality of anode groups comprises a first anode and a second anode which are oppositely arranged in the second direction, the first anode comprises a first main body portion and a first connection portion, and the first connection portion is electrically connected to a pixel driving circuit corresponding to the first anode,
the first anode further comprises an extension portion and an anode compensation portion, wherein an orthographic projection of the anode compensation portion on the base substrate covers one thin film transistor in the pixel driving circuit connected to the first connection portion,
the first main body portion and the anode compensation portion at least partially overlap in the first direction, a first center line of the anode compensation portion extending in the second direction is at a first side of a second center line of the first main body portion extending in the second direction, the anode compensation portion has a first point at a side away from the second center line, and the first main body portion has a second point at the first side,
the first anode and a connection line between the first point and the second point enclose a notch region, and an area of the notch region is greater than at least one of an area of the anode compensation portion and an area of the first connection portion.
2. The display substrate according to
3. The display substrate according to
4. The display substrate according to
5. The display substrate according to
6. The display substrate according to
7. The display substrate according to
8. The display substrate according to
9. The display substrate according to
an orthographic projection of the anode compensation portion on the base substrate covers the first node of a pixel driving circuit connected to the first connection portion.
10. The display substrate according to
11. The display substrate according to
the notch region comprises a first notch between the first main body portion and the anode compensation portion,
an orthographic projection of the first notch on the base substrate comprises a first edge and a second edge extending in the second direction, the first edge is connected to an orthographic projection of the first connection portion on the base substrate, and the second edge is on a connection line between the first point and the second point.
12. The display substrate according to
13. The display substrate according to
an orthographic projection of the second notch on the base substrate comprises a fourth edge and a fifth edge extending in the second direction, the fourth edge is connected to an orthographic projection of the first extension portion on the base substrate, and the fifth edge is also on the connection line between the first point and the second point.
14. The display substrate according to
15. The display substrate according to
the first connection portion and the second connection portion are symmetrically arranged about a symmetry axis parallel to the first direction, wherein the first connection portion is at a side of the first main body portion away from the second main body portion, and the second connection portion is at a side of the second main body portion away from the first main body portion.
16. The display substrate according to
an orthographic projection of the first supplementary portion on the base substrate at least partially overlaps with an orthographic projection of a channel region of the compensation thin film transistor in the pixel driving circuit electrically connected to the second connection portion on the base substrate.
17. The display substrate according to
the first main body portion is at a side of the light-emitting control line in the pixel driving circuit connected to the first connection portion away from the storage capacitor, and the anode compensation portion is at a side of the light-emitting control line away from the first main body portion.
18. The display substrate according to
19. The display substrate according to
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This application is the National Stage of PCT/CN2020/114559 filed on Sep. 10, 2020, which claims priority under PCT/CN2020/086997 filed on Apr. 26, 2020, the disclosure of which is incorporated by reference.
Embodiments of the present disclosure relate to a display substrate and a display device.
With the continuous development of display technology, organic light-emitting diode (OLED) display technology has been increasingly used in various electronic devices because of its advantages of self-illumination, wide viewing angle, wide color gamut, high contrast, low power consumption and high reaction speed.
On the other hand, with the continuous development of organic light-emitting diode display technology, people put forward higher requirements for the performance of organic light-emitting diode display products such as power consumption, color cast, brightness and stability.
Embodiments of the present disclosure provide a display substrate and a display device. The display substrate includes: a base substrate; a pixel circuit layer on the base substrate; an anode layer located at a side of the pixel circuit layer away from the base substrate. The pixel circuit layer includes a plurality of pixel driving circuits, the anode layer includes a plurality of anodes, the plurality of pixel driving circuits are arranged in one-to-one correspondence with the plurality of anodes, the plurality of anodes include a plurality of anode groups arranged in an array along a first direction and a second direction, each of the plurality of anode groups includes a first anode and a second anode which are oppositely arranged in the second direction. The first anode includes a first main body portion and a first connection portion, and the first connection portion is electrically connected to a pixel driving circuit corresponding to the first anode. The first anode also includes an extension portion and an anode compensation portion, the orthographic projection of the anode compensation portion on the base substrate covers one thin film transistor in the pixel driving circuit connected to the first connection portion, the first main body portion and the anode compensation portion at least partially overlap in the first direction, the first center line of the anode compensation portion extending in the second direction is located at a first side of the second center line of the first main body portion extending in the second direction. The anode compensation portion has a first point at a side away from the second center line, and the first main body portion has a second point at the first side, and the first anode and a connection line between the first point and the second point enclose a notch region, and the area of the notch region is greater than at least one of the area of the anode compensation portion and the area of the first connection portion. According to the display substrate, the shape of the first anode is designed, so that the extension portion of the first anode avoids the light transmitting region of the display substrate as much as possible, thereby improving the light transmittance of the display substrate.
At least one embodiment of the present disclosure provides a display substrate, which includes: a base substrate; a pixel circuit layer, on the base substrate; an anode layer, at a side of the pixel circuit layer away from the base substrate, wherein the pixel circuit layer includes a plurality of pixel driving circuits, the anode layer includes a plurality of anodes, and the plurality of pixel driving circuits are arranged in one-to-one correspondence with the plurality of anodes, the plurality of anodes include a plurality of anode groups arranged in an array along a first direction and a second direction, each of the plurality of anode groups includes a first anode and a second anode which are oppositely arranged in the second direction, the first anode includes a first main body portion and a first connection portion, and the first connection portion is electrically connected to a pixel driving circuit corresponding to the first anode, the first anode further includes an extension portion and an anode compensation portion, wherein an orthographic projection of the anode compensation portion on the base substrate covers one thin film transistor in the pixel driving circuit connected to the first connection portion, the first main body portion and the anode compensation portion at least partially overlap in the first direction, a first center line of the anode compensation portion extending in the second direction is at a first side of a second center line of the first main body portion extending in the second direction, the anode compensation portion has a first point at a side away from the second center line, and the first main body portion has a second point at the first side, the first anode and a connection line between the first point and the second point enclose a notch region, and an area of the notch region is greater than at least one of an area of the anode compensation portion and an area of the first connection portion.
For example, in the display substrate provided by an embodiment of the present disclosure, the area of the notch region is greater than a sum of the area of the anode compensation portion and the area of the first connection portion.
For example, in the display substrate provided by an embodiment of the present disclosure, the anode compensation portion is at the first side of the second center line of the first main body portion extending in the second direction.
For example, in the display substrate provided by an embodiment of the present disclosure, the extension portion includes a first extension portion and a second extension portion, the first extension portion is at a side of the first connection portion away from the first main body portion, the second extension portion is respectively connected to the first extension portion and the anode compensation portion, and the first extension portion is at a side of the second extension portion away from the anode compensation portion.
For example, in the display substrate provided by an embodiment of the present disclosure, a third center line of the first extension portion extending in the second direction is at a second side of the second center line of the first main body portion extending in the second direction, and the second side is opposite to the first side.
For example, in the display substrate provided by an embodiment of the present disclosure, the first extension portion is at the second side of the second center line of the first main body portion extending in the second direction.
For example, in the display substrate provided by an embodiment of the present disclosure, an orthographic projection of the notch region on the base substrate does not overlap with an orthographic projection of the first anode on the base substrate.
For example, in the display substrate provided by an embodiment of the present disclosure, a fourth center line of the first connection portion extending in the second direction is at the first side of the second center line of the first main body portion.
For example, in the display substrate provided by an embodiment of the present disclosure, each of the plurality of pixel driving circuits includes a driving thin film transistor and a compensation thin film transistor, a drain electrode of the driving thin film transistor and a source electrode of the compensation thin film transistor are connected to a first node, an orthographic projection of the anode compensation portion on the base substrate covers the first node of a pixel driving circuit connected to the first connection portion.
For example, in the display substrate provided by an embodiment of the present disclosure, a size of the first connection portion in the first direction is smaller than a size of the first main body portion in the first direction, and a size of the first extension portion in the first direction is smaller than a size of the first connection portion in the first direction.
For example, in the display substrate provided by an embodiment of the present disclosure, each of the plurality of anode groups further includes a third anode and a fourth anode; in each of the plurality of anode groups, the first anode and the second anode form an anode pair, the third anode, the anode pair and the fourth anode are arranged in sequence in the first direction, and the first anode and the second anode are arranged in sequence in the second direction.
For example, in the display substrate provided by an embodiment of the present disclosure, the notch region includes a first notch between the first main body portion and the anode compensation portion, an orthographic projection of the first notch on the base substrate includes a first edge and a second edge extending in the second direction, the first edge is connected to an orthographic projection of the first connection portion on the base substrate, and the second edge is on a connection line between the first point and the second point.
For example, in the display substrate provided by an embodiment of the present disclosure, an area of the orthographic projection of the first notch on the base substrate is greater than ½ of an area of the orthographic projection of the first connection portion on the base substrate.
For example, in the display substrate provided by an embodiment of the present disclosure, the notch region further includes a second notch between the first notch and the anode compensation portion, an orthographic projection of the second notch on the base substrate includes a fourth edge and a fifth edge extending in the second direction, the fourth edge is connected to an orthographic projection of the first extension portion on the base substrate, and the fifth edge is also on the connection line between the first point and the second point.
For example, in the display substrate provided by an embodiment of the present disclosure, an area of the orthographic projection of the second notch on the base substrate is greater than ½ of an area of the orthographic projection of the first connection portion on the base substrate.
For example, in the display substrate provided by an embodiment of the present disclosure, the second anode includes a second main body portion and a second connection portion, the second main body portion is electrically connected to a pixel driving circuit corresponding to the second anode, and an orthographic projection of the second main body portion on the base substrate covers a first node of the pixel driving circuit electrically connected to the second connection portion, the first connection portion and the second connection portion are symmetrically arranged about a symmetry axis parallel to the first direction, wherein the first connection portion is at a side of the first main body portion away from the second main body portion, and the second connection portion is at a side of the second main body portion away from the first main body portion.
For example, in the display substrate provided by an embodiment of the present disclosure, the second anode further includes a first supplementary portion, the first supplementary portion is protruded from the second main body portion in a direction the second main body portion close to the first anode, an orthographic projection of the first supplementary portion on the base substrate at least partially overlaps with an orthographic projection of a channel region of the compensation thin film transistor in the pixel driving circuit electrically connected to the second connection portion on the base substrate.
For example, in the display substrate provided by an embodiment of the present disclosure, each of the plurality of pixel driving circuits further includes a storage capacitor and a light-emitting control line, the storage capacitor includes a first electrode plate and a second electrode plate arranged in a direction perpendicular to the base substrate, the first main body portion is at a side of the light-emitting control line in the pixel driving circuit connected to the first connection portion away from the storage capacitor, and the anode compensation portion is at a side of the light-emitting control line away from the first main body portion.
For example, in the display substrate provided by an embodiment of the present disclosure, each of the plurality of pixel driving circuits further includes a data line and a power line, in each of the plurality of pixel driving circuits, an orthographic projection of the second electrode plate on the base substrate, an orthographic projection of the light-emitting control line on the base substrate, the data line and the power line enclose a first interval region, and an area of the first interval region covered by an orthographic projection of the first extension portion on the base substrate is smaller than ½ of a total area of the first interval region.
For example, in the display substrate provided by an embodiment of the present disclosure, each of the plurality of pixel driving circuits further includes an initialization signal line, an orthographic projection of the light-emitting control line in a pixel driving circuit corresponding to the first anode on the base substrate, an orthographic projection of the initialization signal line in a pixel driving circuit corresponding to the second anode on the base substrate, the data line and the power line enclose a second interval region, and an area of the second interval region covered by an orthographic projection of the first anode on the base substrate is smaller than ⅔ of a total area of the second interval region.
For example, in the display substrate provided by an embodiment of the present disclosure, the third anode includes a third main body portion and a third connection portion, and the third connection portion is electrically connected to a pixel driving circuit corresponding to the third anode; the fourth anode includes a fourth main body portion and a fourth connection portion, and the fourth connection portion is electrically connected to a pixel driving circuit corresponding to the fourth anode.
For example, in the display substrate provided by an embodiment of the present disclosure, the fourth anode further includes a second supplementary portion protruding from the fourth main body portion in a direction the fourth main body portion close to the second anode, an orthographic projection of the second supplementary portion on the base substrate at least partially overlaps with an orthographic projection of a channel region of the compensation thin film transistor in the pixel driving circuit electrically connected to the third connection portion on the base substrate.
For example, in the display substrate provided by an embodiment of the present disclosure, the fourth anode further includes a third supplementary portion protruding from the fourth main body portion in a direction the fourth main body portion away from the second anode, an orthographic projection of the third supplementary portion on the base substrate at least partially overlaps with an orthographic projection of a channel region of the compensation thin film transistor in the pixel driving circuit electrically connected to the first connection portion on the base substrate.
For example, the display substrate provided by an embodiment of the present disclosure further includes a pixel defining layer at a side of the anode layer away from the base substrate; and a light-emitting layer at a side of the anode layer away from the base substrate, wherein the pixel defining layer includes a plurality of openings, the plurality of openings are arranged in one-to-one correspondence with the plurality of anodes, and each of the plurality of openings partially exposes a corresponding anode of the plurality of anodes, the light-emitting layer includes a plurality of light-emitting portions, the plurality of light-emitting portions are arranged in one-to-one correspondence with the plurality of openings, and at least a part of each of the plurality of light-emitting portions is in a corresponding one of the plurality of opening and covers an exposed part of a corresponding anode of the plurality of anodes.
For example, in the display substrate provided by an embodiment of the present disclosure, the plurality of openings are divided into a plurality of opening groups, each of the plurality of opening groups includes a first opening and a second opening, and the plurality of light-emitting portions are divided into a plurality of light-emitting portion groups, each of the plurality of light-emitting portion groups includes a first light-emitting portion and a second light-emitting portion, an orthographic projection of the first opening on the base substrate falls within an orthographic projection of the first main body portion on the base substrate, at least a part of the first light-emitting portion is in the first opening and covers an exposed part of the first main body portion, and a shape of the orthographic projection of the first main body portion on the base substrate is similar to a shape of the orthographic projection of the first opening on the base substrate.
For example, in the display substrate provided by an embodiment of the present disclosure, the pixel circuit layer includes: a semiconductor layer on the base substrate; and a first gate electrode layer at a side of the semiconductor layer away from the base substrate, wherein the semiconductor layer includes a plurality of pixel driving units which are arranged in one-to-one correspondence with the anodes, each of the plurality of pixel driving units includes a first unit, a second unit, a third unit, a fourth unit, a fifth unit, a sixth unit and a seventh unit, the first unit includes a first channel region, and a first source region and a first drain region at two sides of the first channel region, the second unit includes a second channel region, and a second source region and a second drain region at two sides of the second channel region, the third unit includes a third channel region, and a third source region and a third drain region at two sides of the third channel region, the fourth unit comprises a fourth channel region, and a fourth source region and a fourth drain region at two sides of the fourth channel region, the fifth unit includes a fifth channel region, and a fifth source region and a fifth drain region at two sides of the fifth channel region, the sixth unit includes a sixth channel region, and a sixth source region and a sixth drain region at two sides of the sixth channel region, the seventh unit includes a seventh channel region, and a seventh source region and a seventh drain region at two sides of the seventh channel region, the third source region, the first drain region and the fifth source region are connected to the first node, the sixth drain region is connected to the third drain region, the first source region, the second drain region and the fourth drain region are connected to the second node, the fifth drain region is connected to the seventh drain region, the first gate electrode layer includes a reset signal line, a gate line, a first electrode block and a light-emitting control line, wherein the reset signal line overlaps with the seventh channel region and the sixth channel region to form a seventh thin film transistor and a sixth thin film transistor with the seventh unit and the sixth unit, and the gate line respectively overlaps with the third channel region and the second channel region to form a third thin film transistor and a second thin film transistor with the third unit and the second unit, the first electrode block overlaps with the first channel region to form a first thin film transistor with the first unit, and the light-emitting control line overlaps with the fourth channel region and the fifth channel region to form a fourth thin film transistor and a fifth thin film transistor with the fourth unit and the fifth unit, the first thin film transistor is the driving thin film transistor, and the third thin film transistor is the compensation thin film transistor.
For example, in the display substrate provided by an embodiment of the present disclosure, the reset signal line, the gate line and the light-emitting control line all extend in the first direction, and the reset signal line, the gate line, the first electrode block and the light-emitting control line are arranged in the second direction.
For example, in the display substrate provided by an embodiment of the present disclosure, the pixel circuit layer includes: a second gate electrode layer at a side of the first gate electrode layer away from the semiconductor layer; wherein the second gate electrode layer includes an initialization signal line and a second electrode block, the initialization signal line is connected to the seventh source region and the sixth source region, and an orthographic projection of the second electrode block on the base substrate at least partially overlaps with an orthographic projection of the first electrode block on the base substrate to form a storage capacitor.
For example, in the display substrate provided by an embodiment of the present disclosure, the pixel circuit layer further includes: a source-drain electrode layer at a side of the second gate electrode layer away from the first gate electrode layer, wherein the source-drain electrode layer includes the data line and the power line, the second source region is connected to the data line, and the fourth source region is connected to the power line.
For example, in the display substrate provided by an embodiment of the present disclosure, the source-drain electrode layer further includes: a connection block including a first end and a second end, the first end is connected to the drain region of the compensation thin film transistor, and the second end is connected to the first electrode block, wherein an orthographic projection of the anode compensation portion on the base substrate covers an orthographic projection of the second end on the base substrate.
At least one embodiment of the present disclosure further provides a display device comprising any one of the display substrates as described above.
In order to more clearly illustrate the technical solution of the embodiments of the present disclosure, the drawings of the embodiments will be briefly described in the following. It is obvious that the described drawings below are only related to some embodiments of the present disclosure without constituting any limitation thereto.
In order to make objectives, technical details and advantages of the embodiments of the present disclosure more clearly, the technical solutions of the embodiments will be described in a clearly and fully understandable way in connection with the drawings related to the embodiments of the present disclosure. Apparently, the described embodiments are just a part but not all of the embodiments of the present disclosure. Based on the described embodiments herein, those skilled in the art can obtain other embodiment(s), without any inventive work, which should be within the scope of the present disclosure.
Unless otherwise defined, all the technical and scientific terms used herein have the same meanings as commonly understood by one of ordinary skill in the art to which the present disclosure belongs. The terms “first,” “second,” etc., which are used in the present disclosure, are not intended to indicate any sequence, amount or importance, but distinguish various components. Also, the terms “include,” “including,” “include,” “including,” etc., are intended to specify that the elements or the objects stated before these terms encompass the elements or the objects and equivalents thereof listed after these terms, but do not preclude the other elements or objects.
With the popularization and application of organic light-emitting diode display panels, the requirements for light transmittance of organic light-emitting diode display panels are getting higher and higher. How to improve the light transmittance of organic light-emitting diode display panel has become an urgent problem to be solved.
Embodiments of the present disclosure provide a display substrate and a display device. The display substrate includes: a base substrate; a pixel circuit layer on the base substrate; an anode layer located at a side of the pixel circuit layer away from the base substrate. The pixel circuit layer includes a plurality of pixel driving circuits, the anode layer includes a plurality of anodes, the plurality of pixel driving circuits are arranged in one-to-one correspondence with the plurality of anodes, the plurality of anodes include a plurality of anode groups arranged in an array along a first direction and a second direction, each of the plurality of anode groups includes a first anode and a second anode which are oppositely arranged in the second direction. The first anode includes a first main body portion and a first connection portion, and the first connection portion is electrically connected to a pixel driving circuit corresponding to the first anode. The first anode also includes an extension portion and an anode compensation portion, an orthographic projection of the anode compensation portion on the base substrate covers one thin film transistor in the pixel driving circuit connected to the first connection portion, the first main body portion and the anode compensation portion at least partially overlap in the first direction, a first center line of the anode compensation portion extending in the second direction is located at a first side of a second center line of the first main body portion extending in the second direction. The anode compensation portion has a first point at a side away from the second center line, and the first main body portion has a second point at the first side, and the first anode and a connection line between the first point and the second point enclose a notch region, and an area of the notch region is greater than at least one of an area of the anode compensation portion and an area of the first connection portion. According to the display substrate, the shape of the first anode is designed, so that the extension portion of the first anode avoids the light transmitting region of the display substrate as much as possible, thereby improving the light transmittance of the display substrate.
Next, the display substrate and the display device provided by the embodiment of the present disclosure will be described in detail with reference to the drawings.
As illustrated in
As illustrated in
As illustrated in
In the display substrate provided by the embodiment of the present disclosure, the extension portion is used for connecting the anode compensation portion with the first connection portion; the first center line of the anode compensation portion extending in the second direction is located at the first side of the second center line of the first main body portion extending in the second direction, and the area of the notch region is greater than at least one of the area of the anode compensation portion and the area of the first connection portion, so that an overlapping area of the extension portion and the light transmitting region of the pixel driving circuit can be reduced. Therefore, the design of the first anode can make the extension portion of the first anode avoid the light transmitting region of the display substrate as much as possible, thereby improving the light transmittance of the display substrate. Because the display substrate has high light transmittance, a photosensitive device such as a camera and a fingerprint recognition module can be arranged below the display substrate.
In some examples, as illustrated in
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In some examples, as illustrated in
In some examples, as illustrated in
In some examples, as illustrated in
In some examples, as illustrated in
For example, the fourth center line 704 of the first connection portion 1751B is located at the side of the first center line 701 away from the second center line 702. Therefore, the first anode can make the first connection portion avoid the light transmitting region of the display substrate as much as possible, thereby further improving the light transmittance of the display substrate.
In some examples, as illustrated in
In some examples, as illustrated in
For example, as illustrated in
In some examples, as illustrated in
In some examples, as illustrated in
In some examples, as illustrated in
For example, the first direction described above can be a row direction of sub-pixel arrangement in the display substrate, that is, the extending direction of a gate line. Of course, the embodiments of the present disclosure include but are not limited thereto, and the first direction described above can also be the column direction of sub-pixel arrangement, that is, an extending direction of the data line.
In some examples, as illustrated in
For example, the edge of the first notch 451 close to the first main body portion 1751A is connected to the first main body portion 1751A, and the edge of the first notch 451 away from the first main body portion 1751A is flush with the edge of the first connection portion 1751B away from the first main body portion 1751A.
In some examples, as illustrated in
In some examples, as illustrated in
For example, the first notch 451 further includes an edge connected to the anode compensation portion 1751E, an edge connected to the second extension portion 1751D, and an edge connected to the second notch 452. in this case, the first notch 451 and the second notch 452 described above can form the notch region 450 described above.
In some examples, as illustrated in
In some examples, as illustrated in
In some examples, as illustrated in
In some examples, as illustrated in
In some examples, as illustrated in
For example, the area of the first interval region 610 covered by the orthographic projection of the first extension portion 1751C on the base substrate 110 can also be smaller than ⅓ of the total area of the first interval region 610.
In some examples, as illustrated in
For example, the area of the second interval region 620 covered by the orthographic projection of the first anode 1751 on the base substrate 110 is smaller than ½ of the total area of the second interval region 620.
In some examples, as illustrated in
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For example, as illustrated in
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For example, as illustrated in
For example, the first light-emitting portion and the second light-emitting portion are configured to emit light of the same color.
For example, the first light-emitting portion is configured to emit green light, the third light-emitting portion is configured to emit red light, and the fourth light-emitting portion is configured to emit blue light. Of course, embodiments of the present disclosure include but are not limited thereto.
In some examples, as illustrated in
As illustrated in
For example, as illustrated in
For example, as illustrated in
In some examples, the reset signal line, the gate line and the light-emitting control line all extend in the first direction, and the reset signal line, the gate line, the first electrode block and the light-emitting control line are arranged in the second direction.
As illustrated in
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Hereinafter, an operation mode of the pixel driving circuit illustrated in
Then, when a gate signal is transmitted to the gate line 132 and a data signal is transmitted to the data line 152, both the second thin film transistor T2 and the third thin film transistor T3 are turned on, and a data voltage Vd is applied to the first gate electrode through the second thin film transistor T2 and the third thin film transistor T3. At this time, the voltage applied to the first gate electrode is a compensation voltage Vd+Vth, and the compensation voltage applied to the first gate electrode is also applied to the first electrode block CE1 of the storage capacitor Cst.
Subsequently, the power line 151 applies a driving voltage Vel to the second electrode block CE2 of the storage capacitor Cst, and applies the compensation voltage Vd+Vth to the first electrode block CE1, so that charges corresponding to differences between voltages respectively applied to the two electrodes of the storage capacitor Cst are stored in the storage capacitor Cst, and the first thin film transistor T1 is turned on for a predetermined time.
Subsequently, when an emission control signal is applied to the light-emitting control line 133, both the fourth thin film transistor T4 and the fifth thin film transistor T5 are turned on, so that the fourth thin film transistor T4 applies a driving voltage Vel to the fifth thin film transistor T5. When the driving voltage Vel passes through the first thin film transistor T1 turned on by the storage capacitor Cst, the difference between the corresponding driving voltage Vel and the voltage applied to the first gate electrode through the storage capacitor Cst causes a driving current Id to flow through the first drain region D3 of the first thin film transistor T1, and the driving current Id is applied to each sub-pixel through the fifth thin film transistor T5, so that the light-emitting layer of each sub-pixel emits light.
In the display substrate provided in this example, the pixel driving circuit adopts a 7T1C pixel driving structure, and in the light-emitting stage, the stability of the driving thin film transistor T1 directly affects the long-term light-emitting stability of the organic light-emitting diode display device. In the charging stage, the charging voltage on the gate electrode of the driving thin film transistor T1 is related to the state of the compensation thin film transistor T3. Generally, thin film transistors are very sensitive to light, and when the thin film transistors (especially the channel region) are exposed to light, the characteristics of the thin film transistors will drift easily, which will affect the normal operation of the pixel driving circuit. The first supplementary portion is added on the second anode of the display substrate, and the orthographic projection of the first supplementary portion on the base substrate at least partially overlaps with the orthographic projection of the channel region of the compensation thin film transistor in the pixel driving circuit electrically connected to the second connection portion, so that the display substrate can shield the channel region of the corresponding compensation thin film transistor through the first supplementary portion, thereby improving the stability and service life of the compensation thin film transistor and further improving the long-term light-emitting stability and service life of the display substrate.
It should be noted that when the compensation thin film transistor T3 has a double gate structure, the channel region of the above compensation thin film transistor T3 includes two channel regions and a common electrode between the two channel regions. For example, as illustrated in
In some examples, as illustrated in
In some examples, as illustrated in
In some examples, as illustrated in
At least one embodiment of the present disclosure further provides a display device.
For example, the display device can be electronic products with display functions such as televisions, computers, notebook computers, flat computers, mobile phones, navigators, and electronic photo frames, etc.
The following statements need to be explained:
The above are merely exemplary embodiments of the present disclosure but are not limitative to the scope of the present disclosure; the scopes of the present disclosure should be defined in the appended claims.
Ma, Hongwei, Wang, Yu, Zhang, Xin, Qu, Yi, Liu, Biao, Jiang, Xiaofeng, Dong, Xiangdan, Shang, Tinghua, Du, Mengmeng, Yang, Lulu, He, Yupeng, Zhang, Guomeng
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Executed on | Assignor | Assignee | Conveyance | Frame | Reel | Doc |
Sep 10 2020 | Technology Co., Ltd. | (assignment on the face of the patent) | / | |||
Sep 10 2020 | BOE TECHNOLOGY GROUP CO., LTD. | (assignment on the face of the patent) | / | |||
Apr 01 2021 | DONG, XIANGDAN | CHENGDU BOE OPTOELECTRONICS TECHNOLOGY CO , LTD | CORRECTIVE ASSIGNMENT TO CORRECT THE SPELLING OF THE THIRD ASSIGNOR S NAME ON THE COVER SHEET PREVIOUSLY RECORDED AT REEL: 056593 FRAME: 0201 ASSIGNOR S HEREBY CONFIRMS THE ASSIGNMENT | 057388 | /0452 | |
Apr 01 2021 | DU, MENGMENG | CHENGDU BOE OPTOELECTRONICS TECHNOLOGY CO , LTD | CORRECTIVE ASSIGNMENT TO CORRECT THE SPELLING OF THE THIRD ASSIGNOR S NAME ON THE COVER SHEET PREVIOUSLY RECORDED AT REEL: 056593 FRAME: 0201 ASSIGNOR S HEREBY CONFIRMS THE ASSIGNMENT | 057388 | /0452 | |
Apr 01 2021 | LIU, BIAO | CHENGDU BOE OPTOELECTRONICS TECHNOLOGY CO , LTD | CORRECTIVE ASSIGNMENT TO CORRECT THE SPELLING OF THE THIRD ASSIGNOR S NAME ON THE COVER SHEET PREVIOUSLY RECORDED AT REEL: 056593 FRAME: 0201 ASSIGNOR S HEREBY CONFIRMS THE ASSIGNMENT | 057388 | /0452 | |
Apr 01 2021 | QU, YI | CHENGDU BOE OPTOELECTRONICS TECHNOLOGY CO , LTD | CORRECTIVE ASSIGNMENT TO CORRECT THE SPELLING OF THE THIRD ASSIGNOR S NAME ON THE COVER SHEET PREVIOUSLY RECORDED AT REEL: 056593 FRAME: 0201 ASSIGNOR S HEREBY CONFIRMS THE ASSIGNMENT | 057388 | /0452 | |
Apr 01 2021 | HE, YUPENG | CHENGDU BOE OPTOELECTRONICS TECHNOLOGY CO , LTD | CORRECTIVE ASSIGNMENT TO CORRECT THE SPELLING OF THE THIRD ASSIGNOR S NAME ON THE COVER SHEET PREVIOUSLY RECORDED AT REEL: 056593 FRAME: 0201 ASSIGNOR S HEREBY CONFIRMS THE ASSIGNMENT | 057388 | /0452 | |
Apr 01 2021 | Zhang, Xin | CHENGDU BOE OPTOELECTRONICS TECHNOLOGY CO , LTD | CORRECTIVE ASSIGNMENT TO CORRECT THE SPELLING OF THE THIRD ASSIGNOR S NAME ON THE COVER SHEET PREVIOUSLY RECORDED AT REEL: 056593 FRAME: 0201 ASSIGNOR S HEREBY CONFIRMS THE ASSIGNMENT | 057388 | /0452 | |
Apr 01 2021 | JIANG, XIAOFENG | CHENGDU BOE OPTOELECTRONICS TECHNOLOGY CO , LTD | CORRECTIVE ASSIGNMENT TO CORRECT THE SPELLING OF THE THIRD ASSIGNOR S NAME ON THE COVER SHEET PREVIOUSLY RECORDED AT REEL: 056593 FRAME: 0201 ASSIGNOR S HEREBY CONFIRMS THE ASSIGNMENT | 057388 | /0452 | |
Apr 01 2021 | WANG, YU | CHENGDU BOE OPTOELECTRONICS TECHNOLOGY CO , LTD | CORRECTIVE ASSIGNMENT TO CORRECT THE SPELLING OF THE THIRD ASSIGNOR S NAME ON THE COVER SHEET PREVIOUSLY RECORDED AT REEL: 056593 FRAME: 0201 ASSIGNOR S HEREBY CONFIRMS THE ASSIGNMENT | 057388 | /0452 | |
Apr 01 2021 | ZHANG, GUOMENG | CHENGDU BOE OPTOELECTRONICS TECHNOLOGY CO , LTD | CORRECTIVE ASSIGNMENT TO CORRECT THE SPELLING OF THE THIRD ASSIGNOR S NAME ON THE COVER SHEET PREVIOUSLY RECORDED AT REEL: 056593 FRAME: 0201 ASSIGNOR S HEREBY CONFIRMS THE ASSIGNMENT | 057388 | /0452 | |
Apr 01 2021 | SHANG, TINGHUA | CHENGDU BOE OPTOELECTRONICS TECHNOLOGY CO , LTD | CORRECTIVE ASSIGNMENT TO CORRECT THE SPELLING OF THE THIRD ASSIGNOR S NAME ON THE COVER SHEET PREVIOUSLY RECORDED AT REEL: 056593 FRAME: 0201 ASSIGNOR S HEREBY CONFIRMS THE ASSIGNMENT | 057388 | /0452 | |
Apr 01 2021 | MA, HONGWEI | CHENGDU BOE OPTOELECTRONICS TECHNOLOGY CO , LTD | CORRECTIVE ASSIGNMENT TO CORRECT THE SPELLING OF THE THIRD ASSIGNOR S NAME ON THE COVER SHEET PREVIOUSLY RECORDED AT REEL: 056593 FRAME: 0201 ASSIGNOR S HEREBY CONFIRMS THE ASSIGNMENT | 057388 | /0452 | |
Apr 01 2021 | YANG, LULU | BOE TECHNOLOGY GROUP CO , LTD | CORRECTIVE ASSIGNMENT TO CORRECT THE SPELLING OF THE THIRD ASSIGNOR S NAME ON THE COVER SHEET PREVIOUSLY RECORDED AT REEL: 056593 FRAME: 0201 ASSIGNOR S HEREBY CONFIRMS THE ASSIGNMENT | 057388 | /0452 | |
Apr 01 2021 | SHANG, TINGHUA | BOE TECHNOLOGY GROUP CO , LTD | CORRECTIVE ASSIGNMENT TO CORRECT THE SPELLING OF THE THIRD ASSIGNOR S NAME ON THE COVER SHEET PREVIOUSLY RECORDED AT REEL: 056593 FRAME: 0201 ASSIGNOR S HEREBY CONFIRMS THE ASSIGNMENT | 057388 | /0452 | |
Apr 01 2021 | MA, HONGWEI | BOE TECHNOLOGY GROUP CO , LTD | CORRECTIVE ASSIGNMENT TO CORRECT THE SPELLING OF THE THIRD ASSIGNOR S NAME ON THE COVER SHEET PREVIOUSLY RECORDED AT REEL: 056593 FRAME: 0201 ASSIGNOR S HEREBY CONFIRMS THE ASSIGNMENT | 057388 | /0452 | |
Apr 01 2021 | DONG, XIANGDAN | BOE TECHNOLOGY GROUP CO , LTD | CORRECTIVE ASSIGNMENT TO CORRECT THE SPELLING OF THE THIRD ASSIGNOR S NAME ON THE COVER SHEET PREVIOUSLY RECORDED AT REEL: 056593 FRAME: 0201 ASSIGNOR S HEREBY CONFIRMS THE ASSIGNMENT | 057388 | /0452 | |
Apr 01 2021 | DU, MENGMENG | BOE TECHNOLOGY GROUP CO , LTD | CORRECTIVE ASSIGNMENT TO CORRECT THE SPELLING OF THE THIRD ASSIGNOR S NAME ON THE COVER SHEET PREVIOUSLY RECORDED AT REEL: 056593 FRAME: 0201 ASSIGNOR S HEREBY CONFIRMS THE ASSIGNMENT | 057388 | /0452 | |
Apr 01 2021 | LIU, BIAO | BOE TECHNOLOGY GROUP CO , LTD | CORRECTIVE ASSIGNMENT TO CORRECT THE SPELLING OF THE THIRD ASSIGNOR S NAME ON THE COVER SHEET PREVIOUSLY RECORDED AT REEL: 056593 FRAME: 0201 ASSIGNOR S HEREBY CONFIRMS THE ASSIGNMENT | 057388 | /0452 | |
Apr 01 2021 | QU, YI | BOE TECHNOLOGY GROUP CO , LTD | CORRECTIVE ASSIGNMENT TO CORRECT THE SPELLING OF THE THIRD ASSIGNOR S NAME ON THE COVER SHEET PREVIOUSLY RECORDED AT REEL: 056593 FRAME: 0201 ASSIGNOR S HEREBY CONFIRMS THE ASSIGNMENT | 057388 | /0452 | |
Apr 01 2021 | HE, YUPENG | BOE TECHNOLOGY GROUP CO , LTD | CORRECTIVE ASSIGNMENT TO CORRECT THE SPELLING OF THE THIRD ASSIGNOR S NAME ON THE COVER SHEET PREVIOUSLY RECORDED AT REEL: 056593 FRAME: 0201 ASSIGNOR S HEREBY CONFIRMS THE ASSIGNMENT | 057388 | /0452 | |
Apr 01 2021 | Zhang, Xin | BOE TECHNOLOGY GROUP CO , LTD | CORRECTIVE ASSIGNMENT TO CORRECT THE SPELLING OF THE THIRD ASSIGNOR S NAME ON THE COVER SHEET PREVIOUSLY RECORDED AT REEL: 056593 FRAME: 0201 ASSIGNOR S HEREBY CONFIRMS THE ASSIGNMENT | 057388 | /0452 | |
Apr 01 2021 | JIANG, XIAOFENG | BOE TECHNOLOGY GROUP CO , LTD | CORRECTIVE ASSIGNMENT TO CORRECT THE SPELLING OF THE THIRD ASSIGNOR S NAME ON THE COVER SHEET PREVIOUSLY RECORDED AT REEL: 056593 FRAME: 0201 ASSIGNOR S HEREBY CONFIRMS THE ASSIGNMENT | 057388 | /0452 | |
Apr 01 2021 | WANG, YU | BOE TECHNOLOGY GROUP CO , LTD | CORRECTIVE ASSIGNMENT TO CORRECT THE SPELLING OF THE THIRD ASSIGNOR S NAME ON THE COVER SHEET PREVIOUSLY RECORDED AT REEL: 056593 FRAME: 0201 ASSIGNOR S HEREBY CONFIRMS THE ASSIGNMENT | 057388 | /0452 | |
Apr 01 2021 | ZHANG, GUOMENG | BOE TECHNOLOGY GROUP CO , LTD | CORRECTIVE ASSIGNMENT TO CORRECT THE SPELLING OF THE THIRD ASSIGNOR S NAME ON THE COVER SHEET PREVIOUSLY RECORDED AT REEL: 056593 FRAME: 0201 ASSIGNOR S HEREBY CONFIRMS THE ASSIGNMENT | 057388 | /0452 | |
Apr 01 2021 | YANG, LULU | CHENGDU BOE OPTOELECTRONICS TECHNOLOGY CO , LTD | CORRECTIVE ASSIGNMENT TO CORRECT THE SPELLING OF THE THIRD ASSIGNOR S NAME ON THE COVER SHEET PREVIOUSLY RECORDED AT REEL: 056593 FRAME: 0201 ASSIGNOR S HEREBY CONFIRMS THE ASSIGNMENT | 057388 | /0452 | |
Apr 01 2021 | MA, HONGWEI | BOE TECHNOLOGY GROUP CO , LTD | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 056593 | /0201 | |
Apr 01 2021 | DONG, XIANGDAN | CHENGDU BOE OPTOELECTRONICS TECHNOLOGY CO , LTD | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 056593 | /0201 | |
Apr 01 2021 | DU, MENGMENG | CHENGDU BOE OPTOELECTRONICS TECHNOLOGY CO , LTD | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 056593 | /0201 | |
Apr 01 2021 | LIU, BIAO | CHENGDU BOE OPTOELECTRONICS TECHNOLOGY CO , LTD | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 056593 | /0201 | |
Apr 01 2021 | QU, YI | CHENGDU BOE OPTOELECTRONICS TECHNOLOGY CO , LTD | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 056593 | /0201 | |
Apr 01 2021 | HE, YUPENG | CHENGDU BOE OPTOELECTRONICS TECHNOLOGY CO , LTD | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 056593 | /0201 | |
Apr 01 2021 | Zhang, Xin | CHENGDU BOE OPTOELECTRONICS TECHNOLOGY CO , LTD | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 056593 | /0201 | |
Apr 01 2021 | JIANG, XIAOFENG | CHENGDU BOE OPTOELECTRONICS TECHNOLOGY CO , LTD | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 056593 | /0201 | |
Apr 01 2021 | WANG, YU | CHENGDU BOE OPTOELECTRONICS TECHNOLOGY CO , LTD | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 056593 | /0201 | |
Apr 01 2021 | GUOMENG, GUOMENG | CHENGDU BOE OPTOELECTRONICS TECHNOLOGY CO , LTD | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 056593 | /0201 | |
Apr 01 2021 | SHANG, TINGHUA | CHENGDU BOE OPTOELECTRONICS TECHNOLOGY CO , LTD | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 056593 | /0201 | |
Apr 01 2021 | MA, HONGWEI | CHENGDU BOE OPTOELECTRONICS TECHNOLOGY CO , LTD | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 056593 | /0201 | |
Apr 01 2021 | YANG, LULU | BOE TECHNOLOGY GROUP CO , LTD | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 056593 | /0201 | |
Apr 01 2021 | DONG, XIANGDAN | BOE TECHNOLOGY GROUP CO , LTD | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 056593 | /0201 | |
Apr 01 2021 | DU, MENGMENG | BOE TECHNOLOGY GROUP CO , LTD | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 056593 | /0201 | |
Apr 01 2021 | LIU, BIAO | BOE TECHNOLOGY GROUP CO , LTD | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 056593 | /0201 | |
Apr 01 2021 | QU, YI | BOE TECHNOLOGY GROUP CO , LTD | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 056593 | /0201 | |
Apr 01 2021 | HE, YUPENG | BOE TECHNOLOGY GROUP CO , LTD | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 056593 | /0201 | |
Apr 01 2021 | Zhang, Xin | BOE TECHNOLOGY GROUP CO , LTD | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 056593 | /0201 | |
Apr 01 2021 | JIANG, XIAOFENG | BOE TECHNOLOGY GROUP CO , LTD | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 056593 | /0201 | |
Apr 01 2021 | WANG, YU | BOE TECHNOLOGY GROUP CO , LTD | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 056593 | /0201 | |
Apr 01 2021 | GUOMENG, GUOMENG | BOE TECHNOLOGY GROUP CO , LTD | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 056593 | /0201 | |
Apr 01 2021 | SHANG, TINGHUA | BOE TECHNOLOGY GROUP CO , LTD | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 056593 | /0201 | |
Apr 01 2021 | YANG, LULU | CHENGDU BOE OPTOELECTRONICS TECHNOLOGY CO , LTD | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 056593 | /0201 |
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